Department of Neurosurgery, University Hospital Bonn, Bonn, Germany.
Department of Neuropathology, University Hospital Bonn, Bonn, Germany.
Glia. 2023 Sep;71(9):2210-2233. doi: 10.1002/glia.24388. Epub 2023 May 25.
Oligodendrocyte precursor cells (OPCs) generate oligodendrocytes, a process that may be tuned by neuronal activity, possibly via synaptic connections to OPCs. However, a developmental role of synaptic signaling to OPCs has so far not been shown unequivocally. To address this question, we comparatively analyzed functional and molecular characteristics of highly proliferative and migratory OPCs in the embryonic brain. Embryonic OPCs in mice (E18.5) shared the expression of voltage-gated ion channels and their dendritic morphology with postnatal OPCs, but almost completely lacked functional synaptic currents. Transcriptomic profiling of PDGFRα OPCs revealed a limited abundance of genes coding for postsynaptic signaling and synaptogenic cell adhesion molecules in the embryonic versus the postnatal period. RNA sequencing of single OPCs showed that embryonic synapse-lacking OPCs are found in clusters distinct from postnatal OPCs and with similarities to early progenitors. Furthermore, single-cell transcriptomics demonstrated that synaptic genes are transiently expressed only by postnatal OPCs until they start to differentiate. Taken together, our results indicate that embryonic OPCs represent a unique developmental stage biologically resembling postnatal OPCs but without synaptic input and a transcriptional signature in the continuum between OPCs and neural precursors.
少突胶质前体细胞 (OPC) 分化为少突胶质细胞,这一过程可能受神经元活动调控,可能通过突触连接到 OPC 来实现。然而,突触信号对 OPC 的发育作用目前还没有明确的证据。为了解决这个问题,我们比较分析了胚胎大脑中高增殖和迁移性 OPC 的功能和分子特征。胚胎期 E18.5 期的 OPC 与出生后的 OPC 一样表达电压门控离子通道,具有树突形态,但几乎完全缺乏功能性突触电流。PDGFRα OPC 的转录组分析显示,与出生后相比,胚胎期 OPC 中编码突触后信号和突触发生细胞黏附分子的基因丰度有限。单细胞转录组分析显示,胚胎期缺乏突触的 OPC 存在于与出生后 OPC 不同的簇中,与早期祖细胞相似。此外,单细胞转录组学表明,突触基因仅在出生后 OPC 开始分化之前短暂表达。总之,我们的结果表明,胚胎期 OPC 代表了一个独特的发育阶段,在生物学上类似于出生后 OPC,但没有突触输入和在 OPC 和神经前体细胞之间的转录特征。